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Cloud Base with the Middle and Upper Atmosphere (MU) and Weather Radars,
Journal of Geophysical Research , Vol.115, Art.no.D19116, doi:10.1029/2009JD013519.
Luce, H., Nakamura, T., Yamamoto, M. K., Yamamoto, M. & Fukao, S. (2010b). MU Radar
and Lidar Observations of Clear-Air Turbulence Underneath Cirrus, Monthly
Weather Review , Vol.138, No.2, pp.438-452, doi:10.1175/2009MWR2927.1.
Luce, H., Takai, T., Nakamura, T., Yamamoto, M., Fukao, S. (2010c). Simultaneous
Observations of Thin Humidity Gradients in the Lower Troposphere with a Raman
Lidar and the Very High-Frequency Middle- and Upper-Atmosphere Radar, Journal
of
Atmospheric
and
Oceanic
Technology ,
Vol.27,
No.
5,
pp.950-956,
doi:10.1175/2010JTECHA1372.1.
May, P.T. (1990). Spaced antenna versus Doppler Radars: A Comparison of Techniques
Revisited, Radio Science , Vol.25, No.6, pp.1111-1119, doi:10.1029/RS025i006p01111.
May, P.T., Strauch, R.G., Moran, K.P. & Ecklund, W.L. (1990). Temperature Sounding by
RASS with Wind Profiler Radars: A Preliminary Study, IEEE Transactions on
Geoscience and Remote Sensing , Vol.28, No.1, pp.19-28, doi:10.1109/36.45742.
Mead, J.B., Hopcraft, G., Frasier, S.J., Pollard, B.D., Cherry, C.D., Schaubert, D.H. &
McIntosh, R.E. (1998). A Volume-Imaging Radar Wind Profiler for Atmospheric
Boundary Layer Turbulence Studies, Journal of Atmospheric and Oceanic Technology ,
Vol.15, No.4, pp.849-859, doi:10.1175/1520-0426(1998)015<0849:AVIRWP>2.0.CO;2.
Mega, T., Yamamoto, M.K., Luce, H., Tabata, Y., Hashiguchi, H., Yamamoto, M., Yamanaka,
M. D. & Fukao, S. (2010). Turbulence Generation by Kelvin-Helmholtz Instability in
the Tropical Tropopause Layer Observed with a 47 MHz Range Imaging Radar,
Journal of Geophysical Research , Vol.115, Art.no.D18115, doi:10.1029/2010JD013864.
Met Office (2011), CWINDE Network, Available from
http://www.metoffice.gov.uk/science/specialist/cwinde/.
Mitchell, D.L. (1996). Use of Mass- and Area-Dimensional Power Laws for Determining
Precipitation Particle Terminal Velocities. Journal of the Atmospheric Sciences , Vol.53,
No.12, pp.1710-1723, doi:10.1175/1520-0469(1996)053<1710:UOMAAD>2.0.CO;2.
Mitchell, D.L. & Heymsfield, A.J. (2005). Refinements in the Treatment of Ice Particle
Terminal Velocities, Highlighting Aggregates. Journal of the Atmospheric Sciences ,
Vol.62, No.5, pp.1637-1644, doi:10.1175/JAS3413.1.
Muschinski, A. (1996). Possible Effect of Kelvin-Helmholtz Instability on VHF Radar
Observations of the Mean Vertical Wind, Journal of Applied Meteorology , Vol.35,
No.12, pp.2210-2217, doi:10.1175/1520-0450(1996)035<2210:PEOKHI>2.0.CO;2.
Nishi, N., Yamamoto, M. K., Shimomai, T., Hamada, A. & Fukao, S. (2007), Fine Structure of
Vertical Motion in the Stratiform Precipitation Region Observed by a VHF Doppler
Radar Installed in Sumatra, Indonesia, Journal of Applied Meteorology and
Climatology , Vol.46, No.4, pp.522-537, doi:10.1175/JAM2480.1.
Nishimura, K., Gotoh, E. & Sato, T. (2006). Fine Scale 3D Wind Field Observation with a
Multistatic Equatorial Atmosphere Radar, Journal of the Meteorological Society of
Japan , Vol.84A, pp.227-238, doi:10.2151/jmsj.84A.227.
Nishimura, K., Harada, T. & Sato, T. (2010). Multistatic Radar Observation of a Fine-Scale
Wind Field with a Coupling-Compensated Adaptive Array Technique, Journal of
the Meteorological Society of Japan , Vol.88, No.3, pp.409-424, doi:10.2151/jmsj.2010-
309.
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